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The modern vision of the micromechanism of friction and wear is
explored, from the examination of ideal and real crystal structure
and adhesion properties to the dynamics of solid frictional
interaction. The fundamental quantum-mechanical and relativity
principles of particle interaction are considered as basis of
friction micro-process examination. The changes in solid structure
originated from the influence of different kinds of force fields
are considered. The principal possibility of relativity effect
manifestation by friction is explained. The critical state of
friction - triboplasma - was studied. Structural peculiarities of
triboplasma, the kinetics of its transformation during frictional
interaction as well as the influence of plasma and postplasma
processes on tribojunction friction characteristics and complex
formation by friction were examined. The book addresses to
tribology researchers.
The modern vision of the micromechanism of friction and wear is
explored, from the examination of ideal and real crystal structure
and adhesion properties to the dynamics of solid frictional
interaction. The fundamental quantum-mechanical and relativity
principles of particle interaction are considered as basis of
friction micro-process examination. The changes in solid structure
originated from the influence of different kinds of force fields
are considered. The principal possibility of relativity effect
manifestation by friction is explained. The critical state of
friction - triboplasma - was studied. Structural peculiarities of
triboplasma, the kinetics of its transformation during frictional
interaction as well as the influence of plasma and postplasma
processes on tribojunction friction characteristics and complex
formation by friction were examined. The book addresses to
tribology researchers.
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